JSC A. B. Bekturov Institute of Chemical Sciences, 106 Shokan Ualikhanov St., Almaty 050010, Kazakhstan.
A. N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, 28 Vavilova St., B-334, Moscow 119334, Russia.
Int J Mol Sci. 2023 Jul 11;24(14):11315. doi: 10.3390/ijms241411315.
Our research area is related to the spiropyrazolinium-containingcompounds, which are insufficiently studied compared with pyrazoline-containing compounds. Nitrogen-containing azoniaspiromolecules have also been well studied. In drug design and other areas, they are a priori important structures, since rigid spirocyclic scaffolds with the reduced conformational entropy are able to organize a closely spaced area. Azoniaspirostructures are currently of wide practical interest as ionic liquids, current sources (membranes), structure-directing agents in organocatalysis, and in the synthesis of ordered ceramics. Our goal was the synthesis of 2-aminospiropyrazolilammonium chlorides and hexafluorophosphates. Our methodology is based on the tosylation of β-aminopropioamidoximes with six-membered N-heterocycles (piperidine, morpholine, thiomorpholine, and phenylpiperazine) at the β-position. 2-Aminospiropyrazolilammonium chlorides and hexafluorophosphates were obtained by the reaction of double ion substitution in the reaction of toluenesulfonates of 2-aminospiropyrazolinium compounds with an ethereal solution of HCl in ethanol and with ammonium hexafluorophosphate in ethanol in quantitative yields of 5597%. The physicochemical characteristics of the synthesized compounds and their IR and NMR spectra are presented. The obtained salts were additionally characterized by the single-crystal XRD analysis. The presence of both axial and equatorial conformations of spirocations in solids was confirmed. 2-Aminospiropyrazolilammonium chlorides and hexafluorophosphates have weak in vitro antimicrobial activity on Gram-positive and Gram-negative bacterial lines.
我们的研究领域与含螺吡喃酮的化合物有关,与含吡唑啉的化合物相比,这些化合物的研究还不够充分。含氮的氮杂螺环分子也得到了很好的研究。在药物设计和其他领域,它们是先验的重要结构,因为具有减少构象熵的刚性螺环支架能够组织紧密间隔的区域。氮杂螺环结构目前作为离子液体、电流源(膜)、有机催化中的结构导向剂以及有序陶瓷的合成具有广泛的实际应用兴趣。我们的目标是合成 2-氨基螺吡唑啉铵氯化物和六氟磷酸盐。我们的方法基于β-氨基丙酰胺肟与六元 N-杂环(哌啶、吗啉、硫代吗啉和苯哌嗪)在β位的对甲苯磺酰化。2-氨基螺吡唑啉铵氯化物和六氟磷酸盐是通过 2-氨基螺吡唑啉化合物的对甲苯磺酸盐与乙醇中的 HCl 乙醚溶液和乙醇中的六氟磷酸铵的双离子取代反应得到的,产率为 55-97%。给出了所合成化合物的物理化学特性及其红外和 NMR 光谱。所得盐还通过单晶 XRD 分析进行了表征。在固体中证实了螺阳离子的轴向和赤道构象都存在。2-氨基螺吡唑啉铵氯化物和六氟磷酸盐对革兰氏阳性和革兰氏阴性细菌系具有较弱的体外抗菌活性。